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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Multiple Model Adaptive Estimation of a Hybrid Solid Oxide Fuel Cell Gas Turbine Power Plant Simulator
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Multiple Model Adaptive Estimation of a Hybrid Solid Oxide Fuel Cell Gas Turbine Power Plant Simulator

机译:混合固体氧化物燃料电池燃气涡轮发电厂模拟器的多模型自适应估计

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摘要

Operating points of a 300 kW solid oxide fuel cell gas turbine (SOFC-GT) power plant simulator are estimated with the use of a multiple model adaptive estimation (MMAE) algorithm. This algorithm aims to improve the flexibility of controlling the system to changing operating conditions. Through a set of empirical transfer functions (TFs) derived at two distinct operating points of a wide operating envelope, the method demonstrates the efficacy of estimating online the probability that the system behaves according to a predetermined dynamic model. By identifying which model the plant is operating under, appropriate control strategies can be switched and implemented. These strategies come into effect upon changes in critical parameters of the SOFC-GT system-most notably, the load bank (LB) disturbance and fuel cell (FC) cathode airflow parameters. The SOFC-GT simulator allows the testing of various FC models under a cyber-physical configuration that incorporates a 120 kW auxiliary power unit and balance-of-plant (Bop) components. These components exist in hardware, whereas the FC model in software. The adaptation technique is beneficial to plants having a wide range of operation, as is the case for SOFC-GT systems. The practical implementation of the adaptive methodology is presented through simulation in the MATLAB/SIMULINK environment.
机译:利用多种型号自适应估计(MMAE)算法,估计了300kW固体氧化物燃料电池燃气轮机(SOFC-GT)发电机模拟器的操作点。该算法旨在提高控制系统以改变操作条件的灵活性。通过一组经验传递函数(TFS)导出在宽操作包络的两个不同的操作点,该方法展示了在线估计系统根据预定动态模型的概率的功效。通过识别工厂运行的哪种型号,可以切换和实施适当的控制策略。这些策略对SOFC-GT系统的关键参数变化 - 最值得注意的是,负载库(LB)干扰和燃料电池(FC)阴极气流参数。 SOFC-GT模拟器允许在Cyber​​物理配置下测试各种FC型号,其包含120 kW辅助动力单元和工厂天平(BOP)组件。这些组件存在于硬件中,而软件中的FC模型。适应技术有利于具有多种操作范围的植物,如SOFC-GT系统的情况。通过Matlab / Simulink环境中的仿真提出了自适应方法的实际实现。

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